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A Control Algorithm for Low Pressure - EGR Systems Using a Smith Predictor with Intake Oxygen Sensor Feedback

机译:一种使用IMITH预测因子的低压 - EGR系统控制算法,具有进气氧传感器反馈

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Low-pressure cooled EGR (LP-cEGR) systems can provide significant improvements in spark-ignition engine efficiency and knock resistance. However, open-loop control of these systems is challenging due to low pressure differentials and the presence of pulsating flow at the EGR valve. This research describes a control structure for Low-pressure cooled EGR systems using closed loop feedback control along with internal model control. A Smith Predictor based PID controller is utilized in combination with an intake oxygen sensor for feedback control of EGR fraction. Gas transport delays are considered as dead-time delays and a Smith Predictor is one of the conventional methods to address stability concerns of such systems. However, this approach requires a plant model of the air-path from the EGR valve to the sensor. An open loop EGR mass flow model as well as a simplified plug flow based transport model are utilized to predict EGR fraction at different locations in the air system upstream of the intake oxygen sensor. A turbocharged gasoline spark ignition engine with a low-pressure EGR system is used for algorithm validation. The control algorithm is implemented and tested in real-time using a rapid prototype control system. Experiments consisting of step changes in EGR fraction are performed at steady state engine operating conditions. A clear improvement in control stability and accuracy was observed with the Smith Predictor control over a conventional PID controller.
机译:低压冷却EGR(LP-COGR)系统可以显着改善火花点火发动机效率和抗冲击性。然而,由于低压差异和EGR阀处存在脉动流动,这些系统的开环控制是具有挑战性的。该研究描述了使用闭环反馈控制的低压冷却EGR系统的控制结构以及内部模型控制。基于史密斯预测器的PID控制器与进气氧传感器结合使用,用于EGR分数的反馈控制。气体运输延迟被认为是死区时间延迟,并且史密斯预测器是解决这些系统的稳定性问题的传统方法之一。然而,这种方法需要从EGR阀到传感器的空气路径的工厂模型。开路EGR质量流量模型以及简化的插头流动的传输模型用于预测进气氧传感器上游的空气系统中的不同位置处的EGR级分。具有低压EGR系统的涡轮增压汽油火花点火发动机用于算法验证。使用快速原型控制系统实时实现并测试控制算法。由EGR级分的步骤变化组成的实验在稳态发动机操作条件下进行。通过史密斯预测器对传统PID控制器的控制观察到对控制稳定性和精度的清晰改进。

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